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生物炭可提高牛粪-玉米秸秆堆肥腐殖化、腐熟度并减少堆肥过程中的氮素损失。

Biochar improves compost humification, maturity and mitigates nitrogen loss during the vermicomposting of cattle manure-maize straw.

机构信息

School of Life Science and Engineering, Southwest University of Science and Technology, Mianyang, 621010, China.

Jiangsu Key Laboratory for Molecular and Medical Biotechnology, College of Life Sciences, Nanjing Normal University, Nanjing, 210023, China.

出版信息

J Environ Manage. 2023 Jan 1;325(Pt B):116432. doi: 10.1016/j.jenvman.2022.116432. Epub 2022 Oct 20.

Abstract

Maintaining humidification and inhibiting nitrogen losses during vermicomposting process have emerged to be key factors for high-quality productions. Previous data have showed outstanding functions of biochar addition in improving vermicomposting quality. In this study, the influence of bamboo biochar (BB) and rice husk biochar (RHB) addition on compost maturity, humification and nitrogen loss was evaluated in the vermicomposting of cattle manure and maize straw. Results revealed that BB or RHB amendment improved organic matter decomposition, enhanced humification and maturity of compost, particularly in the 10% BB treatment, which exerted the highest humic acids content and GI value. Furthermore, BB or RHB addition significantly reduced nitrogen losses, in which the volatilization of NH and NO were reduced by 24.93%-66.23% and 14.91%-55.12%. The fewest nitrogen loss was detected in the treatment of 10% BB. Biochar inhibited nirK, nirS but promoted AOB-amoA, nosZ expression; fewer NO producing bacteria (Pseudomonas, Devosia, Luteimonas genus) were observed in the biochar treatment, and thereby decreased the NO emission. Therefore, 10% BB addition for co-vermicomposting cattle manure and maize straw is an efficient way to increase humification, maturity, and reduce nitrogen loss, and future applications following this strategy is believed to generate better productions.

摘要

在堆肥过程中保持湿度和抑制氮损失已成为高质量生产的关键因素。先前的数据表明,生物炭的添加在改善堆肥质量方面具有出色的功能。本研究评估了添加竹炭(BB)和稻壳炭(RHB)对牛粪和玉米秸秆堆肥腐熟度、腐殖化和氮损失的影响。结果表明,BB 或 RHB 改良剂可促进有机物分解,增强堆肥的腐殖化和成熟度,特别是在 10% BB 处理中,腐殖酸含量和 GI 值最高。此外,BB 或 RHB 的添加可显著减少氮损失,其中 NH 和 NO 的挥发分别减少了 24.93%-66.23%和 14.91%-55.12%。在添加 10% BB 的处理中,氮损失最少。生物炭抑制了 nirK、nirS,但促进了 AOB-amoA、nosZ 的表达;生物炭处理中观察到较少的产生 NO 的细菌(假单胞菌、德斯瓦氏菌、吕特氏菌属),从而减少了 NO 的排放。因此,在牛粪和玉米秸秆的共堆肥中添加 10% BB 是一种增加腐殖化、成熟度和减少氮损失的有效方法,未来采用这种策略有望产生更好的产量。

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